Genetics, Vol. 161, 1395-1410, August 2002, Copyright © 2002

The tRNA-Tyr Gene Family of Saccharomyces cerevisiae: Agents of Phenotypic Variation and Position Effects on Mutation Frequency

Sayoko Ito-Harashimaa, Phillip E. Hartzoga, Himanshu Sinhaa, and John H. McCuskera
a Department of Microbiology, Duke University Medical Center, Durham, North Carolina 27710

Corresponding author: John H. McCusker, 3020 Duke University Medical Center, Durham, NC 27710., mccus001{at}mc.duke.edu (E-mail)

Communicating editor: L. PILLUS

Extensive phenotypic diversity or variation exists in clonal populations of microorganisms and is thought to play a role in adaptation to novel environments. This phenotypic variation or instability, which occurs by multiple mechanisms, may be a form of cellular differentiation and a stochastic means for modulating gene expression. This work dissects a case of phenotypic variation in a clinically derived Saccharomyces cerevisiae strain involving a cox15 ochre mutation, which acts as a reporter. The ochre mutation reverts to sense at a low frequency while tRNA-Tyr ochre suppressors (SUP-o) arise at a very high frequency to produce this phenotypic variation. The SUP-o mutations are highly pleiotropic. In addition, although all SUP-o mutations within the eight-member tRNA-Tyr gene family suppress the ochre mutation reporter, there are considerable phenotypic differences among the different SUP-o mutants. Finally, and of particular interest, there is a strong position effect on mutation frequency within the eight-member tRNA-Tyr gene family, with one locus, SUP6, mutating at a much higher than average frequency and two other loci, SUP2 and SUP8, mutating at much lower than average frequencies. Mechanisms for the position effect on mutation frequency are evaluated.





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